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Lux and current analysis on lab-scale smart grid system using Mamdani fuzzy logic controller

机译:MAMDANI模糊逻辑控制器LUX和实验室智能电网系统的电流分析

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The increasing need for electrical energy requires suppliers to innovate in developing electric distribution systems that are better in terms of quality and affordability. In its development, it is necessary to have a control that can combine the electricity network from renewable energy and the main network through voltage back-up or synchronization automatically. The purpose of this research is to create an innovative lux and current analysis on a lab-scale smart grid system using a fuzzy logic controller to control the main network, solar panel network and generator network to supply each other with lab-scale?electrical energy. In the control, Mamdani fuzzy logic controller method is used as the basis for determining the smart grid system control problem solving by adjusting the current conditions on the main network and the light intensity conditions on the LDR sensor. Current conditions are classified in three conditions namely safe, warning, and trip. Meanwhile, the light intensity conditions are classified into three conditions namely dark, cloudy and bright. From the test results, the utility grid (PLN) is at active conditions when the load current is 0.4 A (safe) and light intensity is 1,167 Lux (dark). Then the PLN + PV?condition is active when the load current is 1.37 (warning) and the light intensity is 8,680 lux (bright). Finally, the generator condition is active when the load current is 1.6 (trip) and the light intensity is 8,680 (bright). Based on the test results, it is known that the system can work to determine which source is more efficient based on the parameters obtained.
机译:越来越多的电能需要供应商在开发在质量和负担能力方面更好的电配电系统进行创新。在其开发中,有必要具有可控制的控制,可以将电力网络与可再生能源和主网络通过电压备份或自动同步组合。本研究的目的是使用模糊逻辑控制器创建一个创新的LUX和当前分析,使用模糊逻辑控制器来控制主网络,太阳能电池板网络和发电机网络,以实验室秤提供彼此电力。在控制中,Mamdani模糊逻辑控制器方法用作通过调整主网络上的当前条件和LDR传感器上的光强度条件来确定智能电网系统控制问题解决的基础。目前的条件在三个条件下分类,即安全,警告和旅行。同时,光强度条件被分为三种条件,即黑暗,阴天和明亮。从测试结果来看,当负载电流为0.4(安全)和光强度为1,167勒克斯(黑暗)时,公用电网(PLN)处于有效条件。然后PLN + PV?当负载电流为1.37(警告)时,条件是有效的,并且光强度为8,680勒克斯(明亮)。最后,当负载电流为1.6(跳闸)时,发电机条件是有效的,并且光强度为8,680(明亮)。基于测试结果,已知系统可以根据获得的参数确定哪个源更有效。

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